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Clearing account

Figures 7 and 8 show thermal conductivity data for CBCF after exposure to temperatures of 2673, 2873, 3073, and 3273 K, for 5.7 and 15 7 seconds, respectively. The symbols in the Figs. 7 and 8 represent measured thermal conductivity values, and the solid lines are the predicted behavior from Eqs. (5) through (8) The model clearly accounts for the effects of measurement temperature, exposure tune, and exposure temperature The fit to the data is good (typically within 10%). However, the fit to the as fabricated CBCF data (Fig 6) was less good (-20%), although the scatter in the data was larger because of the much lower heat treatment temperature (1873 K) in that case. Figures 7 and 8 show thermal conductivity data for CBCF after exposure to temperatures of 2673, 2873, 3073, and 3273 K, for 5.7 and 15 7 seconds, respectively. The symbols in the Figs. 7 and 8 represent measured thermal conductivity values, and the solid lines are the predicted behavior from Eqs. (5) through (8) The model clearly accounts for the effects of measurement temperature, exposure tune, and exposure temperature The fit to the data is good (typically within 10%). However, the fit to the as fabricated CBCF data (Fig 6) was less good (-20%), although the scatter in the data was larger because of the much lower heat treatment temperature (1873 K) in that case.
Notice that the lack of specificity of the periodic law as then conceived does not entail that Mendeleev failed to operate in a precise way locally. For example, he himself gave a clear account of his approach to working out some of the main relationships between the properties of the elements in his textbook The Principles of Chemistry. The method consists of simultaneous interpolation within groups or columns as well as within periods or rows of the periodic table. The average of the values of the numerical properties of the four elements flanking the element in question are taken to determine the latter s properties. So Mendeleev wrote ... [Pg.75]

The price of oil itself is not clearly accounted for until the subsidies for exploration and the actual cost of Middle East defense is added. Only recently have the true costs of fossil fuel energy been studied, from defense commitments to long term health care for nationwide respiratory illnesses. Hydrogen must face economic comparisons to gasoline, but we notice that the oil and gas industries are already investing in the hydrogen economy. [Pg.126]

The retention of selected isotopes by amphibians and reptiles is quite variable. For example, whole-body retention of after intraperitoneal injection in the rough-skinned newt showed two distinct loss components with biological half-lives of 2 and 210 days. The slower component accounted for 26% of the administered activity thyroid contained 78% of the total and clearly accounted for the long-term component (Willis and Valett 1971). However, similar studies with 1 and the leopard frog showed three distinct loss components (0.1 day 1.4 to 2.9 days 44.3 to 69.4 days) loss of each component was greater at 25°C than at 10°C. Also, the fast component probably represented plasma clearance through urinary excretion (Willis and Valett 1971). [Pg.1761]

In the first volume, in addition to a detailed account of the elements of Group 0, the general principles of Inorganic Chemistry are discussed. Particular pains have been taken in the selection of material for this volume, and an attempt has been made to present to the reader a clear account of the principles upon which our knowledge of modern Inorganic Chemistry is based. [Pg.270]

Such a model can clearly account for the drop in the magnetic susceptibility. The drop in the conductivity is to be expected because the molecular dimer should be considerably less mobile than the monomer, the solvation should be stronger, and it will probably be more difficult for the NH3 molecule to drift across the pair of cavities. The alternative explanation is of course the formation of neutral complexes with the cations but if the cations retain their original mobility, this seems ruled out. [Pg.248]

A painstakingly clear account with all the mathematical details is given in Instrumental Methods of Electrochemistry, Southampton Electrochemistry Group, Harwood, Chichester, U.K., 1985. [Pg.445]

It is beyond the scope of this discussion to consider the complex interrelationships between these species in detail, but a clear account is given by Wikstrom et al1299 Instead, a summary of the intermediates formed in the reduction of dioxygen will be presented. It is probable that not all of the many intermediates observed are of mechanistic significance. [Pg.695]

Removing this complexity and buying IT infrastructure on demand is the next big promise of the IT outsourcing industry, but a lot of companies are not yet ready to buy these commoditized - and often only partially implemented - services because of the very complexity outlined above. Five strategic elements of infrastructure management need to be in place to simplify the overall infrastructure landscape and to establish clear accountability for infrastructure cost on the IT customer side. [Pg.299]

Both p-1,2 and p-p2 172 peroxo structures can account for the occurrence of two intense bands observed at 350 and 580 nm for oxy-Hc, because two distinct LMCT bands due to Of n and 07r are predicted to split significantly. Detailed theoretical analyses of the Of" — Cu(II) LMCT bands have been reported by Ross and Solomon (254). According to the analyses, the 7r -7r split in p-172 tj2 is larger than that of cis-p-1,2, suggesting that the p-172 172 structure is more likely as a model for oxy-Hc. The low 0-0 vibrational stretch of oxy-Hc was also interpreted in terms of the p-172 tj2 structure based on MO calculations (254), which indicated that Of o- can act as a 7r acid. Hence, the back-donation of the copper to weaken the 0-0 bond of the peroxide ion may result in an unusually low 0-0 frequency in the p-172 Tj2 peroxo complex. In contrast, no clear account was addressed for the low 0-0 frequency of oxy-Hc, assuming the cis-p-1,2 structure. [Pg.52]

With the one-way ANOVA, most statistical packages implement a series of followup tests to determine exactly where any differences lie. Similar procedures exist to allow follow-up after a significant Kruskal-Wallis test, but unfortunately they are not widely implemented in statistical packages. There would be no point in doing so in the present case, but if another data set proves significant and you want to perform follow-up tests, you will either have to resort to a very powerful (and probably not very friendly) statistical package, or do the calculation manually. The latter is tedious, but recipes are available. (A clear account is available in Zar J.H., 1999, Biostatistical Analysis, Prentice Hall, NJ pp. 223-226.)... [Pg.239]

A clear account of methods for structure determination of paramagnetic metalloproteins with a focus on recent developments in the field. [Pg.6227]

Several authors have extaided the treatment of this model to determine its time-dependent response. - A particularly clear account, summarizing and extending earlier work on the subject, is given by Nee and Zwanzig. They obtain... [Pg.242]

The ffp constants determined from the IR spectroscopic data are considered by the authors to be overestimated, possibly due to the formation of associates of pyrrolylaniline (74JCS(P2)449). The high value of the Op constants for the A-pyrrolyl group obtained from the pX, of the /7-(A-pyrrolyl)benzoic acid in aqueous ethanol (77JMC304) as compared with the respective value of the Op constant calculated from the NMR data (74JCS(P2)449) (Table X) is clearly accounted for by solvation effects. [Pg.27]


See other pages where Clearing account is mentioned: [Pg.102]    [Pg.23]    [Pg.299]    [Pg.1715]    [Pg.729]    [Pg.166]    [Pg.497]    [Pg.161]    [Pg.300]    [Pg.381]    [Pg.787]    [Pg.778]    [Pg.127]    [Pg.292]    [Pg.292]    [Pg.254]    [Pg.177]    [Pg.778]    [Pg.132]    [Pg.787]    [Pg.133]    [Pg.529]    [Pg.43]   
See also in sourсe #XX -- [ Pg.328 , Pg.946 ]




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